首页> 外文期刊>Journal of irrigation and drainage engineering >Interannual Variation in Long-Term Center Pivot-Irrigated Maize Evapotranspiration and Various Water Productivity Response Indices. Ⅱ: Irrigation Water Use Efficiency, Crop WUE, Evapotranspiration WUE, Irrigation-Evapotranspiration Use Efficiency, and Precipitation Use Efficiency
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Interannual Variation in Long-Term Center Pivot-Irrigated Maize Evapotranspiration and Various Water Productivity Response Indices. Ⅱ: Irrigation Water Use Efficiency, Crop WUE, Evapotranspiration WUE, Irrigation-Evapotranspiration Use Efficiency, and Precipitation Use Efficiency

机译:长期中心枢轴灌溉的玉米蒸散量和各种水生产率响应指数的年际变化。 Ⅱ:灌溉用水效率,作物水分利用效率,蒸散水分利用效率,灌溉蒸发蒸腾利用效率和降水利用效率

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Quantification of various water use efficiency (crop water productivity) indices for different irrigation regimes can aid in making effective in-season water management decisions and developing crop water productivity models. However, these critical variables can be affected by interannual variation in climatic conditions, and long-term research that provides such data and information is extremely rare. Maize (Zea mays L.) irrigation water use efficiency (IWUE), crop water use efficiency (CWUE), evapotranspiration water use efficiency (ETWUE), annual precipitation use efficiency (ANNPUE), growing season precipitation use efficiency (GRSPUE), and the newly developed growing season precipitation use efficiency with respect to rainfed yield (GRSPUE_(rainfed)) were measured under full and limited irrigation and rainfed conditions from 2005 to 2010 in south-central Nebraska. An additional new irrigation efficiency term [irrigation-evapotranspiration use efficiency (IRRETUE)] was developed and tested to evaluate the efficiency of irrigation management with respect to actual crop evapotranspiration (ETa). Four irrigation treatments were imposed [fully irrigated treatment (FIT), 75% FIT, 60% FIT, and 50% FIT] and a control rainfed treatment. CWUE varied from 1.21 kg/m~3 for rainfed treatment in the dry year of 2005 to 2.51 kg/m~3 for 60% FIT in the below average year of 2009. CWUE exhibited substantial interannual variation. The lowest CWUE was always obtained under rainfed production, whereas the highest value was usually observed under FIT, except in 2009. The FIT and 75% FIT CWUE values were very similar. Six-year average CWUE values were 2.34,2.32,2.29,2.24, and 1.73 kg/m~3 for FIT, 75% FIT, 60% FIT, 50% FIT, and rainfed, respectively, with SDs of 0.06,0.09,0.14,0.12, and 0.38 kg/m~3, respectively. IWUE varied from 1.75 kg/m~3 for 50% FIT in the wettest year (2008) to 5.9 kg/m~3 for the same treatment in 2009. The six-year average IWUE values were 4.01,4.45,4.48, and 4.13 kg/m~3 for FIT, 75% FIT, 60% FIT, and 50% FIT, respectively, with SD values of 0.82,0.84,0.83, and 1.88 kg/m~3 for the same treatments. There was considerable interannual variation in IWUE for the same treatment; this variation between treatments in a given year was greater than the interannual variation for the same treatment. The IWUE was maximized with limited irrigation treatments (mostly 50% FIT, followed by 75% FIT and 60% FIT). ETWUE values varied from 1.18 for 50% FIT in 2008 to 7.16 kg/m~3 for 60% FIT in 2010; ETWUE decreased linearly with seasonal ETa (R~2 > 0.80) in 2006, 2007, and 2009 and decreased with seasonal ETa, displaying a low R~2 of 0.26 in 2010. In the wettest year (2008), ETWUE increased with ETa (R~2 = 0.31). The new efficiency index, IRRETUE, ranged from 37.8% (62.2% underirrigation) for 50% FIT in 2010 to as high as 149.6% (49.6% overirrigation) for 50% FIT in 2008. On a long-term average, IRRETUE values were 87, 93.2, 88, and 89.2% for FIT, 75% FIT, 60% FIT, and 50% FIT, respectively. The new IRRETUE can be a very effective tool to evaluate the effectiveness of irrigation management practices with respect to meeting crop ETa for maximum yield. When the annual precipitation is considered, FIT resulted in greater ANNPUE, followed closely by 75% FIT and other limited irrigation treatments. The GRSPUE_(rainfed) values on all-treatment average basis were 32,46, 66,90,61, and 82% (for FIT, 75% FIT, 60% FIT, and 50% FIT) lower than the GRSPUE values from 2005 through 2010. May precipitation consistently had the greatest influence on GRSPUE in all years, with high R~2 of 0.73, 0.72, 0.71, and 0.76 for FIT, 75% FIT, 60% FIT, and 50% FIT, respectively. The rainfed treatment, however, was most influenced by April precipitation (R~2 = 0.62). May precipitation was also the most influential on the GRSPUE_(rainfed), with high R~2 values of 0.67, 0.77, 0.87, and 0.82 for FIT, 75% FIT, 60% FIT, and 50% FIT, respectively. These research results are some of the first long-term research results reported in the literature for full and limited irrigated and rainfed maize productivity indices and can provide invaluable data and information for developing effective in-season water management decisions and determining crop productivity responses to different irrigation/water management conditions.
机译:对不同灌溉制度的各种用水效率(作物水分生产率)指标进行量化可以帮助做出有效的季节用水管理决策,并开发作物水分生产率模型。但是,这些关键变量可能会受到气候条件的年际变化的影响,提供此类数据和信息的长期研究极为罕见。玉米(Zea mays L.)灌溉水利用效率(IWUE),作物水利用效率(CWUE),蒸散水利用效率(ETWUE),年降水利用效率(ANNPUE),生长期降水利用效率(GRSPUE)和在内布拉斯加州中南部,从2005年到2010年,在完全和有限的灌溉和雨水条件下,测量了相对于雨水产量(GRSPUE_(雨水))的新近生长季节降水利用效率。开发并测试了另一个新的灌溉效率术语[灌溉-蒸散利用效率(IRRETUE)],以评估相对于实际作物蒸散量(ETa)的灌溉管理效率。进行了四种灌溉处理[完全灌溉处理(FIT),75%FIT,60%FIT和50%FIT]和对照雨养处理。 CWUE的变化范围从2005年干燥年份的雨养处理的1.21 kg / m〜3到2009年低于平均水平的FIT的2.51 kg / m〜3,低于平均水平。CWUE的年际变化很大。始终以雨养方式获得最低的CWUE,而在FIT下通常观察到最高值,但2009年除外。FIT和75%的FIT CWUE值非常相似。 FIT,75%FIT,60%FIT,50%FIT和雨水喂养的六年平均CWUE值分别为2.34、2.32、2.29、2.24和1.73 kg / m〜3,标准差为0.06、0.09、0.14分别为0.12和0.38 kg / m〜3。 IWUE从最潮湿的一年(2008年)的50%FIT的1.75 kg / m〜3变化到2009年相同处理的5.9 kg / m〜3。六年的平均IWUE值分别为4.01、4.45、4.48和4.13 FIT的kg / m〜3、75%FIT,60%FIT和50%FIT,相同处理的SD值为0.82、0.84、0.83和1.88 kg / m〜3。对于相同的治疗,IWUE的年际变化很大。在给定年份中,两次治疗之间的差异大于同一次治疗的年际差异。通过有限的灌溉处理(最多50%FIT,然后是75%FIT和60%FIT)使IWUE最大化。 ETWUE值从2008年50%FIT的1.18到2010年60%FIT的7.16 kg / m〜3不等;在2006、2007和2009年,ETWUE随季节ETa呈线性下降(R〜2> 0.80),随季节ETa呈线性下降,在2010年显示R〜2较低,为0.26。在最湿的年份(2008),ETWUE随着ETa增大( R〜2 = 0.31)。新的效率指标IRRETUE从2010年50%FIT的37.8%(灌溉不足62.2%)到2008年50%FIT的高达149.6%(灌溉过度49.6%)。从长期平均值来看,IRRETUE值为FIT分别为87、93.2、88和89.2%,75%,60%和50%。新的IRRETUE可以是评估灌溉管理实践在满足作物最大排放量ETA方面有效性的非常有效的工具。当考虑年降水量时,FIT导致较大的ANNPUE,紧随其后的是75%FIT和其他有限的灌溉处理。所有治疗的平均GRSPUE_(降雨)值比2005年的GRSPUE值低32,46、66、90、61和82%(对于FIT,75%FIT,60%FIT和50%FIT)直到2010年。5月的降水对GRSPUE的影响一直是所有年份中最大的,FIT,75%FIT,60%FIT和50%FIT的R〜2分别高达0.73、0.72、0.71和0.76。然而,雨养处理受4月降水影响最大(R〜2 = 0.62)。 5月的降水对GRSPUE_(多雨的)也影响最大,FIT,75%FIT,60%FIT和50%FIT的R〜2值分别较高,分别为0.67、0.77、0.87和0.82。这些研究结果是文献中首次报道的全部长期和有限的灌溉和雨养玉米生产力指数的第一批长期研究结果,可以为制定有效的季节性水管理决策和确定作物生产力对不同作物的响应提供宝贵的数据和信息。灌溉/水管理条件。

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